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◆ Environmental microbiology2026-09-01

Spatiotemporal Regulation of N2 Fixation and Photosynthesis in Trichodesmium: New Insights From mRNA CARD-FISH and nanoSIMS.

López-Adams Rebeca, Hania Anxhela, Mišková Anežka, Kienhuis Michiel, Piwosz Kasia, Prášil Ondřej, Polerecký Ľuboš, Eichner Meri

原始摘要(英文原文)· Original abstract
To protect the O2-sensitive nitrogenase enzyme, diazotrophic cyanobacteria separate N2 fixation from photosynthesis in space or time. However, in the filamentous Trichodesmium, technical limitations and conflicting results have so far prevented a consensus on the separation mechanism. Here, we specifically adapted single-cell methods for simultaneously capturing both photosynthesis and N2 fixation at the levels of gene expression, fixation and transport of carbon and nitrogen. Testing expression of nifH (nitrogenase) and psbA (photosystem II), we found that about half of the cells exclusively expressed either one of the genes at a given time, with nifH expression mostly in stretches of several consecutive cells within a filament. Short (30 min) stable isotope labelling enabled us to capture 25% of cells in a stage where they fixed nitrogen but not carbon. Lugol staining suggests that low O2 levels in these cells were maintained by glycogen respiration. Half of the cells received freshly fixed nitrogen within 30 min, most likely by rapid intercellular transport. Taken together, our findings suggest that single-cell regulation of gene expression in combination with rapid intercellular transport of freshly fixed nitrogen as well as glycogen respiration facilitate the separation of N2 fixation and photosynthesis in Trichodesmium.
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Spatiotemporal Regulation of N2 Fixation and Photosynthesis in Trichodesmium: New Insights From mRNA CARD-FISH and nanoSIMS. — 科研速览 Science Skim